Transformation of PMMA from sunlight‐blocking to sunlight‐activated coupled with DNH photocatalytic platform for oxidative coupling of amines and generation/regeneration of LDC/NADH

Author:

Singh Satyam1ORCID,Yadav Rajesh K.1ORCID,Umar Ahmad23,Ibrahim Ahmed A.2,Kim Tae Wu4ORCID,Singh Atul Pratap5,Kumar Rajesh6,Chaudhary Sandeep7ORCID,Dwivedi Dilip K.8,Singh Ravindra Vikram9,Gupta Navneet Kumar10,Singh Chandani11,Baeg Jin‐O.11,Baskoutas Sotirios12ORCID

Affiliation:

1. Department of Chemistry and Environmental Science Madan Mohan Malaviya University of Technology Gorakhpur India

2. Department of Chemistry, College of Science and Arts and Promising Centre for Sensors and Electronic Devices (PCSED) Najran University Najran Saudi Arabia

3. Department of Materials Science and Engineering The Ohio State University Columbus Ohio USA

4. Department of Chemistry Mokpo National University Muan‐gun Korea

5. Department of Chemistry Chandigarh University Mohali India

6. Department of Chemistry Banaras Hindu University Varanasi India

7. Department of Medicinal Chemistry, Laboratory of Organic and Medicinal Chemistry NIPER Raebareli India

8. Department of Physics and Materials Science Madan Mohan Malaviya University of Technology Gorakhpur India

9. R&D, Technology and Innovation, Merck‐Living Innovation, Sigma Aldrich Chemicals Pvt. Ltd. Bengaluru India

10. Centre for Sustainable Technologies, IISC Bangalore Gulmohar Marg Bangalore India

11. Korea Research Institute of Chemical Technology Daejeon South Korea

12. Department of Materials Science University of Patras Patras Greece

Abstract

AbstractThe photocatalytic oxidation and generation/regeneration of amines to imines and leucodopaminechrome (LDC)/NADH are subjects of intense interest in contemporary research. Imines serve as crucial intermediates for the synthesis of solar fuels, fine chemicals, agricultural chemicals, and pharmaceuticals. While significant progress has been made in developing efficient processes for the oxidation and generation/regeneration of secondary amines, the oxidation of primary amines has received comparatively less attention until recently. This discrepancy can be attributed to the high reactivity of imines generated from primary amines, which are prone to dehydrogenation into nitriles. In this study, we present the synthesis and characterization of a novel polymer‐based photocatalyst, denoted as PMMA‐DNH, designed for solar light‐harvesting applications. PMMA‐DNH incorporates the light‐harvesting molecule dinitrophenyl hydrazine (DNH) at varying concentrations (5%, 10%, 20%, 30%, and 40%). Leveraging its high molar extinction coefficient and slow charge recombination, the 30% DNH‐incorporated PMMA photocatalyst proves to be particularly efficient. This photocatalytic system demonstrates exceptional yields (96.5%) in imine production and high generation/regeneration rates for LDC/NADH (65.27%/78.77%). The research presented herein emphasizes the development and application of a newly engineered polymer‐based photocatalyst, which holds significant promise for direct solar‐assisted chemical synthesis in diverse commercial applications.

Publisher

Wiley

Subject

Physical and Theoretical Chemistry,General Medicine,Biochemistry

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